Full superconducting gap in the doped topological crystalline insulator, SnInTe
arXiv:1307.1861
Abstract
The thermal conductivity of the doped topological crystalline insulator, SnInTe superconducting single crystal with 4.1 K, was measured down to 50 mK. It is found that the residual linear term is negligible in zero magnetic field. The shows a slow field dependence at low magnetic field. These results suggest that the superconducting gap is nodeless, unless there exist point nodes with directions perpendicular to the heat current. Due to its high-symmetry fcc crystal structure of SnInTe, however, such point nodes can be excluded. Therefore we demonstrate that this topological superconductor candidate has a full superconducting gap in the bulk. It is likely the unconventional odd-parity state which supports a surface Andreev bound state.
5 pages, 4 figures